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首页> 外文期刊>Cell Reports >PlexinA4-Semaphorin3A-mediated crosstalk between main cortical interneuron classes is required for superficial interneuron lamination
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PlexinA4-Semaphorin3A-mediated crosstalk between main cortical interneuron classes is required for superficial interneuron lamination

机译:浅表界面层压需要Plexina4-Semaphorin3A介导的主皮质中间核课程之间的串扰

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In the mammalian cerebral cortex, the developmental events governing allocation of different classes of inhibitory interneurons (INs) to distinct cortical layers are poorly understood. Here we report that the guidance receptor PlexinA4 (PLXNA4) is upregulated in serotonin receptor 3a-expressing (HTR3A ) cortical INs (hINs) as they invade the cortical plate, and that it regulates their laminar allocation to superficial cortical layers. We find that the PLXNA4 ligand Semaphorin3A (SEMA3A) acts as a chemorepulsive factor on hINs migrating into the nascent cortex and demonstrate that SEMA3A specifically controls their laminar positioning through PLXNA4. We identify deep-layer INs as a major source of SEMA3A in the developing cortex and demonstrate that targeted genetic deletion of Sema3a in these INs specifically affects laminar allocation of hINs. These data show that, in the neocortex, deep-layer INs control laminar allocation of hINs into superficial layers.
机译:在哺乳动物脑皮质中,治疗不同类别抑制性抑制性抑制性抑制性抑制性的发展事件(INS)到明显的皮质层也令人明白。 在这里,我们认为引导受体Plexin44(PLXNA4)在血清素受体3a-表达(HTR3A)皮质INS(HUN)中侵入皮质板时,并且它调节它们对浅表皮层层的层流分配。 我们发现PLXNA4配体血管素3A(SEMA3A)作为迁移到新生皮层的旋转的化学脉冲因子,并证明SEMA3A专门通过PLXNA4控制其层状定位。 我们将深层INS识别为显影皮层中SEMA3A的主要来源,并证明这些INS中的SEMA3A的靶向遗传缺失特别影响HIN的层状分配。 这些数据表明,在Neocortex中,深层INS控制层状层的椭圆形层叠到浅层层。

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